1-2-(2 Hydroxyethoxy Ethyl) Piperazine (HEEP)

1-2-(2 Hydroxyethoxy Ethyl) Piperazine (HEEP)

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1-2-(2 Hydroxyethoxy Ethyl) Piperazine (HEEP) Price And Quantity

  • 100 Kilograms

1-2-(2 Hydroxyethoxy Ethyl) Piperazine (HEEP) Product Specifications

  • 13349-82-1

1-2-(2 Hydroxyethoxy Ethyl) Piperazine (HEEP) Trade Information

  • 1000 Kilograms Per Week
  • 1 Week
  • Asia Australia Central America North America South America Eastern Europe Western Europe Middle East Africa
  • All India

Product Description

1-2-(2 Hydroxyethoxy Ethyl) Piperazine (HEEP) is a piperazine derivative with a hydroxyethoxyethyl group attached to the piperazine ring. Due to its structure, HEEP can act as a solvent or surfactant in formulations. Its structure allows it to engage in reactions such as cross-linking, functional group modification, or binding with other molecules. Its chemical structure consists of a piperazine ring (a six-membered nitrogen-containing heterocycle) with a 2-hydroxyethoxyethyl group (-CH2CH2OH) attached at one of its nitrogen atoms. 1-2-(2 Hydroxyethoxy Ethyl) Piperazine (HEEP) is sometimes used in the synthesis of pharmaceutical compounds or as an intermediate in the development of drug molecules.

1-2-(2 Hydroxyethoxy Ethyl) Piperazine, commonly known as HEEP, is a chemical compound with applications in the pharmaceutical and chemical industries. It belongs to the class of piperazine derivatives and is characterized by the presence of a piperazine ring structure combined with a hydroxyethoxy ethyl group at positions 1 and 2.

HEEP is often utilized as a key intermediate in the synthesis of various pharmaceutical compounds. Its chemical structure and properties make it a valuable building block for drug development, contributing to the creation of substances with diverse pharmacological activities.

The hydroxyethoxy ethyl group enhances the compound's solubility and can influence its bioavailability in pharmaceutical formulations. The versatility of HEEP positions it as an essential component in the synthesis of drugs and other chemical compounds, showcasing its significance in the field of organic chemistry and pharmaceutical research.

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